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Analysis of Gene Expression Patterns during Seed Coat Development in Arabidopsis

机译:拟南芥种皮发育过程中基因表达模式的分析

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摘要

The seed coat is important for embryo protection, seed hydration, and dispersal. Seed coat composition is also of interest to the agricultural sector, since it impacts the nutritional value for humans and livestock alike. Although some seed coat genes have been identified, the developmental pathways controlling seed coat development are not completely elucidated, and a global genetic program associated with seed coat development has not been reported. This study uses a combination of genetic and genomic approaches in Arabidopsis thaliana to begin to address these knowledge gaps. Seed coat development is a complex process whereby the integuments of the ovule differentiate into specialized cell types. In Arabidopsis, the outermost layer of cells secretes mucilage into the apoplast and develops a secondary cell wall known as a columella. The layer beneath the epidermis, the palisade, synthesizes a secondary cell wall on its inner tangential side. The innermost layer (the pigmented layer or endothelium) produces proanthocyanidins that condense into tannins and oxidize, giving a brown color to mature seeds. Genetic separation of these cell layers was achieved using the ap2-7 and tt16-1 mutants, where the epidermis/palisade and the endothelium do not develop respectively. This genetic ablation was exploited to examine the developmental programs of these cell types by isolating and collecting seed coats at key transitions during development and performing global gene expression analysis. The data indicate that the developmental programs of the epidermis and the pigmented layer proceed relatively independently. Global expression datasets that can be used for identification of new gene candidates for seed coat development were generated. These dataset provide a comprehensive expression profile for developing seed coats in Arabidopsis, and should provide a useful resource and reference for other seed systems.
机译:种皮对于胚胎保护,种子水合作用和分散很重要。种皮组合物也引起农业部门的关注,因为它影响着人类和牲畜的营养价值。尽管已经鉴定了一些种皮基因,但尚未完全阐明控制种皮发育的发育途径,并且尚未报道与种皮发育相关的全球遗传程序。这项研究结合了拟南芥的遗传和基因组方法,以开始解决这些知识空白。种皮发育是一个复杂的过程,胚珠的外皮被分化成专门的细胞类型。在拟南芥中,细胞的最外层将粘液分泌到质外体中,并形成称为小肠的次生细胞壁。表皮下面的层,栅栏,在其内切线侧合成了次生细胞壁。最内层(色素层或内皮)产生原花青素,原花青素凝缩成单宁酸并氧化,使成熟的种子呈褐色。这些细胞层的遗传分离是使用ap2-7和tt16-1突变体实现的,其中表皮/栅栏和内皮分别不发育。通过在发育过程中的关键过渡期分离并收集种皮并进行全局基因表达分析,利用这种遗传消融方法检查这些细胞类型的发育程序。数据表明表皮和色素层的发育程序相对独立地进行。产生了可用于鉴定种皮发育的新基因候选物的全局表达数据集。这些数据集为拟南芥中种皮的发育提供了全面的表达特征,并应为其他种子系统提供有用的资源和参考。

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  • 来源
    《Molecular Plant》 |2011年第6期|p.1074-1091|共18页
  • 作者

    George Haughn;

  • 作者单位

    To whom correspondence should be addressed. E-mail;

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  • 正文语种 eng
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